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Fatigue crack detection in aluminum alloy plate by nonlinear time reversal method

机译:非线性时间逆转法通过非线性时间逆转法在铝合金板中的疲劳裂纹检测

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Based on the combination of time reversal method and elastic nonlinear response, the imaging of fatigue cracks in 7075-T6 aluminum alloy plate is experimentally studied by a self-developed system. This system consists of piezoelectric transducers (PZTs), arbitrary waveform generator, power amplifier, laser vibrometer, digital oscilloscope and computer. In experiments, four actuating signals (f=400kHz) are simultaneously emitted by four independent channels of arbitrary waveform generator and are applied to the PZTs array. The frequency components of time reversal refocused signals around fatigue crack are measured and analyzed. The results show that the closer is the laser distant from the crack, the larger is the peak amplitude of third harmonics. Therefore, third harmonic can be used to indicate the presence of fatigue crack. Through scanning the sample surface, the two-dimensional contour plot of the peak amplitude of third harmonics can be gained, and the position of the crack can be located by the imaging.
机译:基于时间反转方法和弹性非线性反应的组合,通过自发射系统研究了7075-T6铝合金板中疲劳裂缝的成像。该系统由压​​电传感器(PZT),任意波形发生器,功率放大器,激光振动计,数字示波器和计算机组成。在实验中,通过四个任意波形发生器的四个独立通道同时发射四个​​致动信号(F = 400kHz),并将其应用于PZTS阵列。测量并分析了疲劳裂纹周围的时间反转分叉信号的频率分量。结果表明,近距离裂缝的激光越近,第三次谐波的峰值幅度越大。因此,第三次谐波可用于表示疲劳裂纹的存在。通过扫描样品表面,可以获得第三谐波的峰值幅度的二维轮廓图,并且裂缝的位置可以通过成像定位。

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